Ogborn Malcolm R, Nitschmann Evan, Goldberg Aviva, Bankovic-Calic Neda, Weiler Hope A, Aukema Harold M
Department of Pediatrics and Child Health, University of Manitoba, JBRC513-715 McDermot Avenue, Winnipeg, MB, R3C 3P4, Canada.
Lipids. 2008 Sep;43(9):783-91. doi: 10.1007/s11745-008-3211-4. Epub 2008 Jul 16.
Conjugated linoleic acid (CLA) is anti-proliferative and anti-inflammatory in the Han:SPRD-cy rat model of kidney disease. We used different doses of CLA and examined effects on renal histological benefit, the renal PPARgamma system and hepatic and renal levels of CLA isomers. Male and female offspring of Han:SPRD-cy heterozygotes were fed diets with 0, 1 or 2% CLA isomer mixture for 12 weeks before dual-energy X-ray absorptiometry, harvest of renal and hepatic tissue for histologic and lipid analysis. Both CLA diets reduced body fat content in both genders but did not change lean body mass. CLA produced a dose dependent reduction in female renal cystic change. CLA reduced fibrosis, but this reduction was significantly less with higher dose in males. CLA reduced macrophage infiltration, tissue oxidized LDL content and proliferation of epithelial cells. Serum creatinine rose significantly in female animals fed CLA diets. CLA treatment did not change PPARgamma activation. A significant negative correlation with renal content of the 18:2 c9,t11 isomer and the sum of histologic effects was identified. CLA reduces histologic renal injury in the Han:SPRD-cy rat model probably inversely proportionate to c9,t11 renal content. Possible functional CLA toxicity at high dose in female animals warrants further exploration.
共轭亚油酸(CLA)在Han:SPRD-cy大鼠肾病模型中具有抗增殖和抗炎作用。我们使用不同剂量的CLA,并检测其对肾脏组织学益处、肾脏PPARγ系统以及肝脏和肾脏中CLA异构体水平的影响。Han:SPRD-cy杂合子的雄性和雌性后代在进行双能X线吸收法检测、采集肾脏和肝脏组织进行组织学和脂质分析之前,分别喂食含0%、1%或2%CLA异构体混合物的饲料12周。两种CLA饲料均降低了两性的体脂含量,但未改变瘦体重。CLA使雌性大鼠的肾囊性改变呈剂量依赖性减少。CLA减少了纤维化,但在雄性大鼠中,高剂量时这种减少作用明显减弱。CLA减少了巨噬细胞浸润、组织氧化型低密度脂蛋白含量以及上皮细胞增殖。喂食CLA饲料的雌性动物血清肌酐显著升高。CLA处理未改变PPARγ的激活。研究发现,18:2 c9,t11异构体的肾脏含量与组织学效应总和之间存在显著负相关。CLA减轻Han:SPRD-cy大鼠模型的肾脏组织学损伤,其作用可能与肾脏中c9,t11的含量成反比。高剂量CLA在雌性动物中可能存在的功能性毒性值得进一步探究。